Gapless Symmetry-Protected Topological States in Measurement-Only Circuits
Abstract
Measurement-only quantum circuits offer a versatile platform for realizing intriguing quantum phases of matter. However, gapless symmetry-protected topological (gSPT) states remain insufficiently explored in these settings. In this Letter, we generalize the notion of gSPT to the critical steady state by investigating measurement-only circuits. Using large-scale Clifford circuit simulations, we investigate the steady-state phase diagram across several families of measurement-only circuits that exhibit topological nontrivial edge states at criticality. In the Ising cluster circuits, we uncover a symmetry-enriched non-unitary critical point, termed symmetry-enriched percolation, characterized by both topologically nontrivial edge states and string operator. Additionally, we demonstrate the realization of a steady-state gSPT phase in a circuit model. This phase features topological edge modes and persists within steady-state critical phases under symmetry-preserving perturbations. Furthermore, we provide a unified theoretical framework by mapping the system to the Majorana loop model, offering deeper insights into the underlying mechanisms.
Keywords
Cite
@article{arxiv.2501.03851,
title = {Gapless Symmetry-Protected Topological States in Measurement-Only Circuits},
author = {Xue-Jia Yu and Sheng Yang and Shuo Liu and Hai-Qing Lin and Shao-Kai Jian},
journal= {arXiv preprint arXiv:2501.03851},
year = {2026}
}
Comments
5.5 pages with supplemental materials, 16 figures